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用于有机溶剂吸收的聚二甲基硅氧烷涂层制备的可持续弹性碳气凝胶及其在传感器(感染、环境、可穿戴传感器等)中的潜在应用

Sustainable and Elastic Carbon Aerogel by Polydimethylsiloxane Coating for Organic Solvent Absorption and Potential Application for Sensors (Infections, Environmental, Wearable Sensors, etc.).

作者信息

Chun Youngsang, Kim Eui-Hwa, Lee Chae-Seok, Chang Hojong, Kang Chan-Sol

机构信息

Department of Advanced Materials Engineering, Shinhan University, 95, Hoam-ro, Uijeongbu-si 11644, Republic of Korea.

KAIST Institute for Information Technology Convergence Integrated Sensor Team, KAIST, Daejeon 34141, Republic of Korea.

出版信息

Materials (Basel). 2023 Jun 24;16(13):4560. doi: 10.3390/ma16134560.

Abstract

Carbon aerogel is a promising material in various applications, such as water treatment, insulators, catalysts, and sensors, due to its porosity, low density, conductivity, and good chemical stability. In this study, an inexpensive carbon aerogel was prepared through lyophilization and post-pyrolysis using waste paper. However, carbon aerogel, in the form of short belts, is randomly entangled without a crosslinking agent and has weak mechanical properties, thus limiting its applications, which would otherwise be various. In this paper, a novel strategy is proposed to fabricate a PDMS-coated carbon aerogel (Aerogel@PDMS). Benefiting from microwave heating, precise PDMS coating onto the carbon frame was able to be carried out in a short amount of time. PDMS coating firmly tied the carbon microstructure, maintaining a unique aerogel property without blocking its porous structure. FE-SEM, RAMAN, XPS, and FT-IR were all used to confirm the surface change in PDMS coating. Compressible stability and water contact angle measurement showed that Aerogel@PDMS is a perspective organic solvent absorbent due to its good resilience and its hydrophobicity, and, as a result, its organic solvent absorption capacity and repeated absorption were evaluated, ultimately suggesting a promising material in oil clean-up and pollution remediation in water. Based on our experimental results, we identified elastic carbon aerogels provided by a novel coating technology. In the future, then, the developed carbon/PDMS composite can be examined as a promising option for various applications, such as environmental sensors, virus sensors, and wearable sensors.

摘要

碳气凝胶因其孔隙率、低密度、导电性和良好的化学稳定性,在水处理、绝缘体、催化剂和传感器等各种应用中是一种很有前景的材料。在本研究中,使用废纸通过冻干和后热解制备了一种廉价的碳气凝胶。然而,短带状的碳气凝胶在没有交联剂的情况下随机缠结,机械性能较弱,从而限制了其原本多样的应用。本文提出了一种新颖的策略来制备聚二甲基硅氧烷(PDMS)包覆的碳气凝胶(Aerogel@PDMS)。受益于微波加热,能够在短时间内将PDMS精确包覆在碳骨架上。PDMS包覆牢固地连接了碳微观结构,保持了独特的气凝胶特性,同时又不堵塞其多孔结构。利用场发射扫描电子显微镜(FE-SEM)、拉曼光谱(RAMAN)、X射线光电子能谱(XPS)和傅里叶变换红外光谱(FT-IR)来确认PDMS包覆后的表面变化。压缩稳定性和水接触角测量表明,Aerogel@PDMS由于其良好的弹性和疏水性,是一种有前景的有机溶剂吸收剂,因此对其有机溶剂吸收能力和重复吸收进行了评估,最终表明它是一种在水体油污清理和污染修复方面很有前景的材料。基于我们的实验结果,我们确定了一种由新型包覆技术提供的弹性碳气凝胶。那么在未来,所开发的碳/PDMS复合材料可作为环境传感器、病毒传感器和可穿戴传感器等各种应用的一个有前景的选择进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f467/10342659/23ba82a3220e/materials-16-04560-g001.jpg

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